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CMOS-based impedance spectroscopy for water quality monitoring

机译:基于CMOS的阻抗光谱,用于水质监测

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Water being used for any purpose needs to adhere to a certain quality standard. Performing tests to ensure water quality can be done in an analytical laboratory with high precision using a wide range of techniques and equipment. There is a growing need, however, for low-cost point-of-need (PON) solutions that would be able to serve a larger portion of earth's population. One of the techniques, Impedance Spectroscopy (IS), measures the impedance of a water sample across a wide range of frequencies in order to analyse some frequency dependent properties of a sample. The problem addressed in this project is to develop an inexpensive, PON, system that can perform Impedance Spectroscopy on water samples. The impedance spectroscopy system is being developed in CMOS using the 0.35μm ams AG process and will produce an impedance spectrum with frequencies ranging from 1 Hz to 10 MHz. The system interfaces with water samples through a standard three-point electrode, with voltage signals being maintained between the reference and working electrode. The analog front end for measurement as well as the digital control circuitry is included in the CMOS design.
机译:用于任何目的的水需要遵守某种质量标准。执行测试以确保水质可以在分析实验室使用各种技术和设备进行高精度进行。然而,对于需求的低成本需求(PON)解决方案,可以提供越来越多的需求,该解决方案能够为地球较大的人口服务。其中一种技术,阻抗光谱(IS)测量水样跨各种频率的阻抗,以分析样品的一些频率依赖性。该项目中解决的问题是开发廉价的PON系统,可以在水样上执行阻抗光谱。使用0.35μmAMS Ag工艺在CMOS中开发阻抗光谱系统,并将产生具有1Hz至10MHz的频率的阻抗谱。系统与水样通过标准三点电极的界面,电压信号在参考和工作电极之间保持。用于测量的模拟前端以及数字控制电路包括在CMOS设计中。

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